Method for building mouse severe aplastic anemia model

An aplastic, mouse technology, applied in the direction of pharmaceutical formulations, organic active ingredients, medical preparations containing active ingredients, etc., can solve the problems of high technical requirements, high cost, instability, etc., and achieves low cost and easy operation. Effect
CN103182071AInactive Publication Date: 2013-07-03AFFILIATED HOSPITAL OF NANTONG UNIV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
AFFILIATED HOSPITAL OF NANTONG UNIV
Publication Date
2013-07-03
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention discloses a method for building a mouse severe aplastic anemia model, wherein the mouse severe aplastic anemia model is built through combination of an interferon-gama with a busulfan administration method, and the mouse severe aplastic anemia model induced by the invention is simple and convenient in method and high in success rate of induction and accords with the characteristics of human aplastic anemia.
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Description

technical field

[0001] The invention relates to a method for a bone marrow failure disease model, in particular to a method for establishing a severe aplastic anemia model in mice. Background technique

[0002] At present, most researchers at home and abroad use mice to establish mouse models of severe aplastic anemia to study the pathogenesis of aplastic anemia. The methods for inducing severe aplastic anemia mouse models mainly include chemical methods, physical methods, immune-mediated methods and mixed methods. The modeling time period of the chemical method is long and unstable; the model of the physical method will damage the organs of the whole body; the hematopoietic function of the mixed method will return to normal on its own at about 25 days, so the model induced by physical or chemical factors is not suitable for aplastic disorders Anemia research. The immune-mediated aplastic anemia model has good stability and is closer to the human immune-mediated bone marro...

Claims

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